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Glutamate is the major excitatory neurotransmitter in the brain and dysfunction of glutamate transmission is the likely cause of a variety of diseases including neurodegeneration following cerebral ischemia, Huntington's chorea, amyotrophic lateral sclerosis, epilepsy, spasticity, emesis, chronic pain, and schizophrenia. Excitatory amino acid receptor agonists and antagonists are therefore of major interest as potential drugs for central nervous system disorders. Excitatory Amino Acids is the first book entirely dedicated to the results of human testing of modulators of excitatory amino
Excitatory amino acids. --- Excitatory amino acids --- Methyl aspartate --- Pathophysiology. --- Receptors.
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Neurotransmitters --- Physiological effect --- Congresses --- Amino acids --- Receptors --- Excitatory amino acids --- Excitatory amino acids - Physiological effect - Congresses. --- Excitatory amino acids - Receptors - Congresses. --- AMINO ACIDS --- PHARMACODYNAMICS --- SYNAPTIC RECEPTORS --- DRUG EFFECTS
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Glutamic acid --- Glutamate --- Excitatory amino acids --- Umami (Taste) --- Metabolism. --- Physiological effect.
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Glutamic acid --- Glutamate --- Excitatory amino acids --- Umami (Taste) --- Metabolism. --- Physiological effect.
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Excitatory amino acids --- Amino Acids --- Receptors, Neurotransmitter --- Physiological effect --- Congresses --- pharmacology --- drug effects
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Glutamate is the major excitatory neurotransmitter in the brain and dysfunction of glutamate transmission is the likely cause of a variety of diseases including neurodegeneration following cerebral ischemia, Huntington's chorea, amyotrophic lateral sclerosis, epilepsy, spasticity, emesis, chronic pain, and schizophrenia. Excitatory amino acid receptor agonists and antagonists are therefore of major interest as potential drugs for central nervous system disorders. Excitatory Amino Acids is the first book entirely dedicated to the results of human testing of modulators of excitatory amino
Excitatory amino acids. --- Excitatory amino acids --- Methyl aspartate --- Methyl aspartic acid --- Methylaspartate --- Methylaspartic acid --- N-methyl-D-aspartate --- N-methyl-D-aspartic acid --- NMDA (Chemistry) --- Aspartic acid --- Amino acid neurotransmitters --- Pathophysiology. --- Receptors.
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Excitatory amino acids --- Glutamic acid --- Nervous system --- Excitatory Amino Acid Antagonists --- Excitatory Amino Acids --- Glutamic Acid --- Neurodegenerative Diseases --- Receptors, Glutamate --- Congresses --- Antagonists --- Therapeutic use --- Physiological effect --- Receptors --- Degeneration --- Chemoprevention --- Pathophysiology --- therapeutic use --- physiology --- therapy
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